A novel mononuclear Cu(I) complex was synthesized via coordination with a benzoquinoxalin-2'-one-1,2,3-triazole chelating diimine and the bis[(2-diphenylphosphino)phenyl] ether (DPEPhos), to target a new and efficient photosensitizer for photocatalytic CO2 reduction. The Cu(I) complex absorbs in the blue-green region of the visible spectrum, with a broad band having a maximum at 475 nm (& varepsilon; =4500 M-1 cm(-1)), which is assigned to the metal-to-ligand charge transfer (MLCT) transition from the Cu(I) to the benzoquinoxalin-2'-one moiety of the diimine. Surprisingly, photo-driven experiments for the CO2 reduction showed that this complex can undergo a photoinduced electron transfer with a sacrificial electron donor and accumulate electrons on the diimine backbone. Photo-driven experiments in a CO2 atmosphere revealed that this complex can not only act as a photosensitizer, when combined with an Fe(III)-porphyrin, but can also selectively produce CO from CO2. Thus, owing to its charge-accumulation properties, the non-innocent benzoquinoxalin-2-one based ligand enabled the development of the first copper(I)-based photocatalyst for CO2 reduction.

Bruschi, C., Gui, X., Rauthe, P., Fuhr, O., Unterreiner, A., Klopper, W., et al. (2024). Dual Role of a Novel Heteroleptic Cu(I) Complex in Visible‐Light‐Driven CO2 Reduction. CHEMISTRY-A EUROPEAN JOURNAL, 30(44) [10.1002/chem.202400765].

Dual Role of a Novel Heteroleptic Cu(I) Complex in Visible‐Light‐Driven CO2 Reduction

Claudia Bizzarri
2024-01-01

Abstract

A novel mononuclear Cu(I) complex was synthesized via coordination with a benzoquinoxalin-2'-one-1,2,3-triazole chelating diimine and the bis[(2-diphenylphosphino)phenyl] ether (DPEPhos), to target a new and efficient photosensitizer for photocatalytic CO2 reduction. The Cu(I) complex absorbs in the blue-green region of the visible spectrum, with a broad band having a maximum at 475 nm (& varepsilon; =4500 M-1 cm(-1)), which is assigned to the metal-to-ligand charge transfer (MLCT) transition from the Cu(I) to the benzoquinoxalin-2'-one moiety of the diimine. Surprisingly, photo-driven experiments for the CO2 reduction showed that this complex can undergo a photoinduced electron transfer with a sacrificial electron donor and accumulate electrons on the diimine backbone. Photo-driven experiments in a CO2 atmosphere revealed that this complex can not only act as a photosensitizer, when combined with an Fe(III)-porphyrin, but can also selectively produce CO from CO2. Thus, owing to its charge-accumulation properties, the non-innocent benzoquinoxalin-2-one based ligand enabled the development of the first copper(I)-based photocatalyst for CO2 reduction.
2024
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/06
Settore CHEM-05/A - Chimica organica
English
Con Impact Factor ISI
CO2 reduction
Cu(I) Photocatalyst
Fe(III) porphyrin
electron accumulation
visible-light
Bruschi, C., Gui, X., Rauthe, P., Fuhr, O., Unterreiner, A., Klopper, W., et al. (2024). Dual Role of a Novel Heteroleptic Cu(I) Complex in Visible‐Light‐Driven CO2 Reduction. CHEMISTRY-A EUROPEAN JOURNAL, 30(44) [10.1002/chem.202400765].
Bruschi, C; Gui, X; Rauthe, P; Fuhr, O; Unterreiner, A; Klopper, W; Bizzarri, C
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/394905
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